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双酚A双(2,3-二羟丙基)醚(BADGE.2H2O)诱导孤儿核受体Nur77基因表达并增加小鼠睾丸间质细胞中的类固醇生成。

Bisphenol A bis(2,3-dihydroxypropyl) ether (BADGE.2H2O) induces orphan nuclear receptor Nur77 gene expression and increases steroidogenesis in mouse testicular Leydig cells.

作者信息

Ahn Seung-Won, Nedumaran Balachandar, Xie Yuanbin, Kim Don-Kyu, Kim Yong Deuk, Choi Hueng-Sik

机构信息

Hormone Research Center, School of Biological Sciences and Technology, Chonnam National University, Gwangju, 500-757, Korea.

出版信息

Mol Cells. 2008 Jul 31;26(1):74-80. Epub 2008 Jun 4.

Abstract

Bisphenol A bis (2,3-dihydroxypropyl) ether (BADGE.2H(2)O) is a component of commercial liquid epoxy resins commonly used in the food-packing industry and in dental sealants. There is evidence that it has significant estrogenic activity. Nur77 plays a crucial role in the regulation of certain genes involved in LH-mediated steroidogenesis in testicular Leydig cells. It was previously demonstrated that Bisphenol A (BPA) stimulates Nur77 gene induction and steroidogenesis. In this study, we investigated the effects of BADGE.2H(2)O on Nur77 gene expression and steroidogenesis. Northern blot analysis showed that it increased the expression of Nur77 mRNA and protein, and transient transfection assays demonstrated that it increased the promoter activity and transactivation of Nur77. It also increased the expression of certain steroidogenic genes, such as StAR and 3 beta-HSD. Finally, over-expression of a dominant negative Nur77 cDNA via adenoviral infection reduced BADGE.2H(2)O-mediated progesterone biosynthesis. These results indicate that BADGE.2H(2)O disrupts testicular steroidogenesis by increasing Nur77 gene expression.

摘要

双酚A双(2,3-二羟丙基)醚(BADGE.2H₂O)是食品包装行业和牙科密封剂中常用的商业液体环氧树脂的一种成分。有证据表明它具有显著的雌激素活性。Nur77在睾丸间质细胞中参与LH介导的类固醇生成的某些基因的调控中起关键作用。先前已证明双酚A(BPA)刺激Nur77基因诱导和类固醇生成。在本研究中,我们研究了BADGE.2H₂O对Nur77基因表达和类固醇生成的影响。Northern印迹分析表明它增加了Nur77 mRNA和蛋白质的表达,瞬时转染试验表明它增加了Nur77的启动子活性和反式激活。它还增加了某些类固醇生成基因的表达,如StAR和3β-HSD。最后,通过腺病毒感染过表达显性负性Nur77 cDNA降低了BADGE.2H₂O介导的孕酮生物合成。这些结果表明BADGE.2H₂O通过增加Nur77基因表达破坏睾丸类固醇生成。

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